锝-99m标记醋酸左连翘酯脂质体在埃利希腹水荷瘤小鼠体内的制备、表征及生物分布研究。

AAPS PharmSci Pub Date : 2004-02-06 DOI:10.1208/ps060105
N Arulsudar, N Subramanian, P Mishra, K Chuttani, R K Sharma, R S R Murthy
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引用次数: 37

摘要

本研究的目的是制备含有醋酸leuprolide的常规和空间稳定脂质体,试图延长药物的生物半衰期,减少网状内皮系统(RES)的摄取,减少静脉给药多肽药物的注射频率。采用反相蒸发法制备了醋酸leuprolide常规脂质体和空间稳定脂质体,并对其包封效率和粒径进行了表征。用还原锝-99m直接标记醋酸leuprolide及其脂质体。用锝-99m标记后,研究其在携带埃利希腹水瘤(EAT)小鼠体内的生物分布和影像学特征。在家兔体内进行了全身药代动力学研究。与游离药物和常规脂质体相比,含有醋酸leuprolide的空间稳定脂质体具有较高的肿瘤吸收率。游离脂质体、常规脂质体(LL)和空间稳定脂质体(SLL5000和SLL2000)的肝脏/肿瘤摄取比分别为20、7.99、1.63和1.23,表明在注射后24小时,与游离脂质体和常规脂质体相比,空间稳定脂质体在肿瘤中的蓄积增加。肝脏对空间稳定脂质体的摄取仍比常规脂质体少7倍。脂质体在荷瘤小鼠体内的显著积累也被伽玛显像研究证实。研究结果证明了这些脂质体在实体瘤中的分布,并证明了空间稳定脂质体增加了肿瘤的吸收和延长了循环半衰期。因此,这些发现将对多肽药物长循环脂质体的优化设计和脂质体靶向肿瘤具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preparation, characterization, and biodistribution study of technetium-99m -labeled leuprolide acetate-loaded liposomes in Ehrlich ascites tumor-bearing mice.

The purpose of this study was to prepare conventional and sterically stabilized liposomes containing leuprolide acetate in an attempt to prolong the biological half life of the drug, to reduce the uptake by reticuloendothelial system (RES), and to reduce the injection frequency of intravenously administered peptide drugs. The conventional and sterically stabilized liposomes containing leuprolide acetate were prepared by reverse phase evaporation method and characterized for entrapment efficiency and particle size. Radiolabeling of leuprolide acetate and its liposomes was performed by direct labeling with reduced technetium-99m. Its biodistribution and imaging characteristics were studied in ehrlich ascites tumor (EAT)-bearing mice after labeling with technetium-99m. The systemic pharmacokinetic studies were performed in rabbits. A high uptake by tumor was observed by sterically stabilized liposome containing leuprolide acetate compared with free drug and conventional liposomes. The liver/tumor uptake ratio of free drug, conventional (LL), and sterically stabilized liposomes (SLL5000 and SLL2000) was found to be 20, 7.99, 1.63, and 1.23, respectively, which showed the increased accumulation of sterically stabilized liposomes in tumor compared with the free drug and conventional liposomes at 24 hours postinjection. Liver uptake of sterically stabilized liposomes was still 7-fold less than the conventional liposomes. The marked accumulation of liposomes in the tumor-bearing mice was also documented by gamma scintigraphic studies. The findings demonstrate the distribution of these liposomes within solid tumor and prove that the sterically stabilized liposomes experience increased tumor uptake and prolonged circulation half life. Hence these findings will be relevant for the optimal design of long circulating liposomes for the peptide drugs and for targeting of liposomes toward tumor.

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